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首页> 外文期刊>BioNanoscience >Metabolic Enzyme Inhibitory and Larvicidal Activity of Biosynthesized and Heat Stabilized Silver Nanoparticles Using Annona muricata Leaf Extract
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Metabolic Enzyme Inhibitory and Larvicidal Activity of Biosynthesized and Heat Stabilized Silver Nanoparticles Using Annona muricata Leaf Extract

机译:使用Annona Muricata叶提取物的生物合成和热稳定银纳米粒子的代谢酶抑制和幼虫活性

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摘要

The synthesis of silver nanoparticles (AgNPs) using Annona muricata (A. muricata) leaf extract and its larvicidal, metabolic enzyme inhibitory properties was demonstrated here. The AgNPs were synthesized and analyzed by using UV-visible spectroscopy and observed a maximum absorbance peak at 420 nm which corresponds to the AgNPs. The XRD analysis showed the 2 theta intense values (111, 200, 220, and 311) within the ranges of Bragg's reflection; Fourier transform infrared spectroscopy (FTIR) showed that AgNPs were capped with alkanes, amides, and alkenes functional groups which act as a reducing, capping, and stabilizing agent; and field emission scanning electron microscope (FESEM) and high-resolution transmission electron microscopy (HRTEM) results indicated that synthesized AgNPs were spherical in shape with the size of 20-34 nm and energy-dispersive X-ray (EDX) spectroscopy exhibited a strong signal of silver. Various concentrations of AgNPs (6, 12, 18, 24, 30 mu g mL(-1)) and aqueous leaf extract (ALE) (30, 60, 90, 120, 150 mu g mL(-1)) were evaluated, and in all the concentrations, AgNPs showed significant larvicidal properties against three different second instar larvae, when compared to ALE. ALE exhibited LC50 and LC90 values of (LC50 45.521 mu g/mL; LC90 456.406 mu g/mL) against Ae. aegypti followed by An. stephensi (LC50 61.878 mu g/mL; LC90 565.309 mu g/mL) and Cx. quinquefasciatus (LC50 68.952 mu g/mL; LC90 444.512 mu g/mL), and AgNPs were exhibited LC50 and LC90 values (LC50 3.089 mu g/mL; LC90 18.467 mu g/mL) against Ae. aegypti followed by An. stephensi (LC50 3.155 mu g/mL; LC90 39.888 mu g/mL) and Cx. quinquefasciatus (LC50 5.188 mu g/mL; LC90 31.660 mu g/mL), respectively. The A. muricata leaf extract-mediated AgNPs were also evaluated for the first time to identify their metabolic enzyme inhibitory activity which also showed significant results.
机译:这里证实了使用Annona Muricata(A.Muricata)叶提取物及其幼虫的银纳米颗粒(AgNP)的合成。通过使用UV可见光光谱合成并分析AgNP,并观察到420nm处的最大吸光度峰值,其对应于AgNP。 XRD分析显示在布拉格反射范围内的2个θ强值(111,200,220和311);傅里叶变换红外光谱(FTIR)显示AgNP用烷烃,酰胺和烯烃官能团封端,其用作还原,封盖和稳定剂;和场发射扫描电子显微镜(FeSEM)和高分辨率透射电子显微镜(HRTEM)结果表明,合成的AgNPS是具有20-34nm的尺寸的球形,并且能量分散X射线(EDX)光谱表现出强烈的银信号。评估各种浓度的agnps(6,12,18,24,30μgmm)和水性叶提取物(α10)(30,60,90,120,150μgmm(-1)),在所有浓度中,与ALE相比,AgNPS针对三种不同的第二瞬间幼虫显示出显着的幼稚性质。 ALE展示了LC50和LC90值(LC5045.521μg/ ml; LC90456.406μg/ ml)对抗AE。 Aegypti随后是一个。 Stephensi(LC50 61.878 mu g / ml; lc90 565.309 mu g / ml)和cx。 QuinqueFascastus(LC50 68.952 mu g / ml; Lc90 444.512 mu g / ml)和agnps被显示为LC50和LC90值(LC503.089μg/ ml; LC9018.467μg/ ml)。 Aegypti随后是一个。 Stephensi(LC50 3.155 mu g / ml; lc90 39.888 mu g / ml)和cx。 QuinqueFascastus(LC50 5.188 mu g / ml; lc90 31.660 mu g / ml)。 A.Muricata叶提取物介导的agnps也首次评估,以鉴定其代谢酶抑制活性,这也显示出显着的结果。

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